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Adsorption and Desorption Performance and Mechanism of Tetracycline Hydrochloride by Activated Carbon-Based Adsorbents Derived from Sugar Cane Bagasse Activated with ZnCl2

机译:ZnCl2活化甘蔗渣活性炭基吸附剂对盐酸四环素的吸附和解吸性能及其机理。

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摘要

Adsorption and desorption behaviors of tetracycline hydrochloride by activated carbon-based adsorbents derived from sugar cane bagasse modified with ZnCl were investigated. The activated carbon was tested by SEM, EDX, BET, XRD, FTIR, and XPS. This activated carbon exhibited a high BET surface area of 831 m g with the average pore diameter and pore volume reaching 2.52 nm and 0.45 m g , respectively. The batch experimental results can be described by Freundlich equation, pseudo-second-order kinetics, and the intraparticle diffusion model, while the maximum adsorption capacity reached 239.6 mg g under 318 K. The effects of flow rate, bed height, initial concentration, and temperature were studied in fixed bed adsorption experiments, and adsorption data were fitted with six dynamic adsorption models. The results of characterizations and the batch experiments were analyzed to study the adsorption and desorption mechanisms. Tetracycline hydrochloride and activated carbon were bonded together by π–π interactions and cation–π bonds. Ethanol was used as an eluent which bonded with 10 hydrogen bond acceptors on tetracycline hydrochloride to form a complex by hydrogen bonding to achieve recycling.
机译:研究了ZnCl改性甘蔗渣制得的活性炭基吸附剂对四环素盐酸盐的吸附和解吸行为。通过SEM,EDX,BET,XRD,FTIR和XPS测试活性炭。该活性炭表现出高的BET表面积831mg,平均孔径和孔体积分别达到2.52nm和0.45mg。批实验结果可以用Freundlich方程,拟二级动力学和颗粒内扩散模型描述,而在318 K下最大吸附容量达到239.6 mg g。流速,床高,初始浓度和在固定床吸附实验中研究温度,并用六个动态吸附模型拟合吸附数据。分析了表征结果和分批实验,以研究吸附和解吸机理。盐酸四环素和活性炭通过π-π相互作用和阳离子-π键结合在一起。使用乙醇作为洗脱液,该洗脱液与四环素盐酸盐上的10个氢键受体键合,通过氢键键合形成络合物,从而实现回收利用。

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